This research extends the investigator's prior NSF supported work to develop theoretical and empirical understanding of the double bind faced by women of color in STEM fields. That is, their race and gender present dual dilemmas as they move through STEM educational and career paths. The proposed study will identify gaps in our understanding, and identify some of the methodological problems associated with answering outstanding questions about the double bind. The major research question is: What strategies work to enable women of color to achieve higher levels of advancement in STEM academia and professions? The goal is to bring a clearer understanding of the issues which confront women of color as they pursue study of science and engineering, and what factors influence whether they leave or remain in STEM.
The work will employ a highly structured narrative analysis process to identify and quantify factors that have been successful in broadening the participation of minority women in STEM. The research design involves two separate tracks of work: 1) to conduct narrative analysis of primary documents associated with women of color in science; and 2) to conduct site visits and interviews to understand features of programs associated with successful support of women of color in undergraduate and graduate education. The first part is designed to inform the second, with the narrative analysis helping to identify features to look for in site visits and to use in development of interview protocols.
This research will focus on individual and programmatic factors that sustain women of color as they confront barriers to their career goals. It examines institutional strategies and support structures that help women of color ultimately to succeed, and social and pedagogic elements that influence their educational experiences. Although women of color have made some progress over the last three decades towards more equitable participation in STEM fields, the major efforts made to address this issue have not produced the desired outcomes; minority women continue to be underrepresented relative to white women and non-minority men. The factors that account for continued lower participation rates are not yet fully understood.
Beyond the Double Bind is designed to transform the intellectual basis for building future programs that will better enable women of color to be successful in STEM. While focused on women of color, the results will ultimately inform strategies and programs to expand the presence of all women and minorities in STEM.
There is broad consensus in the international scientific community that the world is facing a biodiversity crisis — the accelerated loss of life on Earth brought about by human activity. Threats to biodiversity have been variously classified by different authors (Diamond 1989, Laverty and Sterling 2004, Brook et al. 2008), but typically include ecosystem loss and fragmentation, unsustainable use, invasive species, pollution, and climate change. Across the globe, traditional and indigenous cultures are affected by many of the same threats affecting biological diversity, including the
A Fulldome Planetarium Show for Space Science: A Pilot Project was designed to immerse and engage middle school students (grades 5-8) in space exploration, comparative planetology and the importance of sustainability on our own planet. Morehead Planetarium and Science Center at the University of North Carolina at Chapel Hill led the project, which involved the development of a 27 minute fulldome digital planetarium show and supporting curricula. The project included advisors from NASA JPL, UNC’s Physics and Astronomy Department and the Wake County North Carolina Public School System. The show draws on discoveries by the Mars Exploration Rovers, Hubble Space Telescope and other NASA missions to compare and contrast geological, atmospheric, and other physical characteristics of the places visited by the show's main characters. The aims of the show are to provide an engaging learning experience that helps students understand the criteria used to classify Solar System bodies and appreciate the environmental conditions needed to support life as we know it. Further, the show aims to communicate why Earth - with a balance of systems and resources found nowhere else - is an "amazing oasis" in our Solar System. The Standards-Based Learning Activities for Middle School support and extend the content of the Solar System Odyssey show by providing clear, detailed ideas for pre- and post- visit lessons. The lessons center on Teaching about Technology Design, Integrating Science and Language Arts, Teaching about Environmental Systems and include science experiments, creative writing and vocabulary exercises, discussion and engineering design challenges. The lessons reference specific NASA missions, and some of the activities are modeled directly after previously produced NASA educational materials. The show and curricular materials have been translated and are available in Spanish.
This paper discusses conceptions of identity in relation to science education and presents material from a series of interviews and focus groups with graduate students in science and technology. Given difficulties in retention and levels of significant participation by minority students indicated by aggregate data, the issue of race, as it informs critical interactions at a majority research university, is explored in terms of its effects on identity formation. It is argued that we need to look at “real-time” science to see how subtle interactions affect minority graduate students. These
Pulse of the Planet children's science challenge includes 150 radio programs which focus on the interaction between a select group of scientists and youths 8-11, who have been chosen from a nationwide Science Challenge which encourages children to submit questions and potential experiments to scientists. Project partners include a variety of businesses (e.g., sports manufacturers such as K2), media (e.g., internet social networks such as imbee.com, TIME for Kids, Dragonfly TV, and Hispanic Communications Network) and educational partnerships (e.g. Community Science Workshops and the National Science Teacher's Association.) Underserved participants will be reached through Celebra la Ciencia science outreach programs.
The New York Hall of Science is overseeing a complex, four-year applied research and traveling exhibit development project on "precursor concepts" to the theory of evolution. These concepts pertain to key ideas about life -- variation, inheritance, selection, and time (VIST) -- and are organized around the principle that living things change over time. The central research question is: Can informal, museum-based interventions prepare young children (5 -12) to understand the scientific basis of evolution by targeting their intuitive pre-evolutionary concepts? The work involves many collaborators -- museum personnel around the country, university researchers, exhibit designers and evaluators, web designers, the Association of Science-Technology Centers and a number of advisors in the biological sciences, psychology and in informal and formal education. The products include applied research studies that will add to the conceptual change knowledge base in cognitive psychology, a 1,000 square-foot exhibit plus discovery boxes, a section on the UC-Berkeley Understanding Evolution web site, extensive on site and online staff training opportunities for participating museums and others, several dissemination activities including two research symposia, and bilingual (English and Spanish) exhibit materials and family guides. The project is positioned as a new model in informal science education for integrating research, development and evaluation, with applicability beyond the life sciences to other STEM fields.
Michigan Technological University will collaborate with David Heil and Associates to implement the Family Engineering Program, working in conjunction with student chapters of engineering societies such as the American Society for Engineering Education (ASEE), the Society of Hispanic Professionals (SHP) and a host of youth and community organizations. The Family Engineering Program is designed to increase technological literacy by introducing children ages 5-12 and their parents/caregivers to the field of engineering using the principles of design. The project will reach socio-economically diverse audiences in the upper peninsula of Michigan including Native American, Hispanic, Asian, and African American families. The secondary audience includes university STEM majors, informal science educators, and STEM professionals that are trained to deliver the program to families. A well-researched five step engineering design process utilized in the school-based Engineering is Elementary curriculum will be incorporated into mini design challenges and activities based in a variety of fields such as agricultural, chemical, environmental, and biomedical engineering. Deliverables include the Family Engineering event model, Family Engineering Activity Guide, Family Engineering Nights, project website, and facilitator training workshops. The activity guide will be pilot tested, field tested, and disseminated for use in urban, suburban, and rural settings. Strategic impact will result from the development of content-rich engineering activities for families and the dissemination of a project model that incorporates the expertise of engineering and educational professionals at multiple levels of implementation. It is anticipated that 300 facilitators and 7,000-10,000 parents and children will be directly impacted by this effort, while facilitator training may result in more than 27,000 program participants.
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TEAM MEMBERS:
Neil HutzlerEric IversenChristine CunninghamJoan ChaddeDavid Heil
The Conservation Trust of Puerto Rico, Cornell Laboratory of Ornithology, the Interdisciplinary Center for Coastal Studies, New York Botanical Garden, Puerto Rico Youth at Risk, Boy Scouts, and others implemented a citizen science program for age 12 and older. This project targeted local residents, visitors to Hacienda La Esperanza Reserve, and members of community environmental projects on topics including archeology and human impacts on local ecosystems; conservation and restoration of wetlands; and shoreline and costal processes.
Having developed the concept of near-peer mentorship at the middle school/high school level and utilized it in a summer science education enhancement program now called Gains in the Education of Mathematics and Science or GEMS at the Walter Reed Army Institute of Research (WRAIR), it is now our goal to ultimately expand this program into an extensive, research institute-based source of young, specially selected, near-peer mentors armed with kits, tools, teacher-student developed curricula, enthusiasm, time and talent for science teaching in the urban District of Columbia Public Schools (specific schools) and several more rural disadvantaged schools (Frederick and Howard Counties) in science teaching. We describe this program as a new in-school component, involving science clubs and lunch programs, patterned after our valuable summer science training modules and mentorship program. Our in-house program is at its maximum capacity at the Institute. Near-peer mentors will work in WRAIR's individual laboratories while perfecting/adapting hands-on activities for the new GEMS-X program to be carried out at McKinley Technology HS, Marian Koshland Museum, Roots Charter School and Lincoln Junior HS in DC, West Frederick Middle School, Frederick, MD and Folly Quarter Middle School and Glenelg HS, in Howard County, MD. Based on local demographics in these urban/rural areas, minority and disadvantaged youth, men and women, may choose science, mathematics, engineering and technology (SMET) careers with increasing frequency after participating, at such an early age, in specific learning in the quantitative disciplines. Many of these students take challenging courses within their schools, vastly improve their standardized test scores, take on internship opportunities, are provided recommendations from scientists and medical staff and ultimately are able to enter health professions that were previously unattainable. Relevance to Public Health: The Gains in the Education of Mathematis and Science (GEMS) program educates a diverse student population to benefit their science education and ultimately may improve the likelihood of successfully entry into a health or health-related professions for participating individuals. Medical education has been show to improve public health.